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在自制迷你生物反应器中,从诱导多能干细胞生成脑类器官。

Brain Organoid Generation from Induced Pluripotent Stem Cells in Home-Made Mini Bioreactors.

机构信息

Federal Research and Clinical Center of Physical-Chemical Medicine, Federal Medical Biological Agency; Center for Precision Genome Editing and Genetic Technologies for Biomedicine, Federal Research and Clinical Center of Physical-Chemical Medicine, Federal Medical Biological Agency.

Federal Research and Clinical Center of Physical-Chemical Medicine, Federal Medical Biological Agency; Faculty of Bioengineering and Bioinformatics, Lomonosov Moscow State University.

出版信息

J Vis Exp. 2021 Dec 11(178). doi: 10.3791/62987.

Abstract

The iPSC-derived brain organoid is a promising technology for in vitro modeling the pathologies of the nervous system and drug screening. This technology has emerged recently. It is still in its infancy and has some limitations unsolved yet. The current protocols do not allow obtaining organoids to be consistent enough for drug discovery and preclinical studies. The maturation of organoids can take up to a year, pushing the researchers to launch multiple differentiation processes simultaneously. It imposes additional costs for the laboratory in terms of space and equipment. In addition, brain organoids often have a necrotic zone in the center, which suffers from nutrient and oxygen deficiency. Hence, most current protocols use a circulating system for culture medium to improve nutrition. Meanwhile, there are no inexpensive dynamic systems or bioreactors for organoid cultivation. This paper describes a protocol for producing brain organoids in compact and inexpensive home-made mini bioreactors. This protocol allows obtaining high quality organoids in large quantities.

摘要

iPSC 衍生的脑类器官是体外模拟神经系统疾病和药物筛选的有前途的技术。这项技术最近才出现。它仍处于起步阶段,有一些尚未解决的局限性。目前的方案无法获得足够一致的类器官,无法用于药物发现和临床前研究。类器官的成熟可能需要长达一年的时间,这迫使研究人员同时启动多个分化过程。这会给实验室在空间和设备方面带来额外的成本。此外,脑类器官的中心经常有一个坏死区,存在营养和氧气缺乏的问题。因此,目前大多数方案都使用循环系统来培养培养基,以改善营养。同时,没有廉价的动态系统或生物反应器用于类器官培养。本文描述了一种在紧凑且廉价的自制迷你生物反应器中生产脑类器官的方案。该方案可以大量获得高质量的类器官。

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